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Published in: Technical Physics 5/2019

01-05-2019 | PHYSICAL ELECTRONICS

Physical Operating Principles of Palladium–Barium Cathodes of Microwave Devices

Authors: V. I. Kapustin, I. P. Li, A. V. Shumanov, S. O. Moskalenko, A. A. Bush, Yu. Yu. Lebedinskii

Published in: Technical Physics | Issue 5/2019

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Abstract

High-resolution X-ray diffraction method (XRD) is used to determine sizes and crystallographic orientation of the nanocrystallites of the Pd and Pd5Ba phases in palladium–barium cathode. Electron spectroscopy for chemical analysis (ESCA) is used to study Ba and Pd chemical states in cathode material and determine the phase composition including dissolved microimpurities in the phases. The comparison of the XRD and ESCA data makes it possible to reveal effects related to the formation of the BaO crystallites in the cathode material, which are responsible for the emission properties. Electron-energy loss spectroscopy is used to determine the concentration of oxygen vacancies in the BaO crystallites that are formed in the cathode material due to activation. An original crystallite model of the working palladium–barium cathodes that is based on the results of this work may serve as an alternative to the known film model and makes it possible to optimize technology of cathode fabrication and activation.

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Metadata
Title
Physical Operating Principles of Palladium–Barium Cathodes of Microwave Devices
Authors
V. I. Kapustin
I. P. Li
A. V. Shumanov
S. O. Moskalenko
A. A. Bush
Yu. Yu. Lebedinskii
Publication date
01-05-2019
Publisher
Pleiades Publishing
Published in
Technical Physics / Issue 5/2019
Print ISSN: 1063-7842
Electronic ISSN: 1090-6525
DOI
https://doi.org/10.1134/S1063784219050086

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